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44 results for “Notostraca”
FIGURE 3 in A record of Notostraca on Socotra Island and the importance of local conservation of the habitat
FIGURE 3. Triops cf. granarius from Socotra Island (Yemen). A–B, carapace, lateral view in adult male (A) and female (trachyaspsis form) (B). C–D, carina, lateral view in male (C) and female (D). E, apodous segments, ventral view in male, showing supernumerary spines. F, Labrum adult female, ventral view. Scale bars denote 4mm (A–B), 2mm (E–F) and 1mm (C– D).
FIGURE 1 in A record of Notostraca on Socotra Island and the importance of local conservation of the habitat
FIGURE 1. Locality of Triops on Socotra Island. A, the Socotra Archipelago (Yemen) lies in the western Indian Ocean just off the Horn of Africa. B, Eriosh is situated at the northern coast of Socotra Island. C, relative position of Eriosh to coastal roads and two of the Socotra Conservation Zoning Plan 2000 categories; the site is currently located in a Resource Use Reserve; as the only place currently known on Socotra where Triops is found with other large branchiopods and only the second locality for the genus on Indian Ocean islands, Eriosh should be considered for a special protection status from a freshwater biodiversity conservation perspective.
FIGURE 5 in A record of Notostraca on Socotra Island and the importance of local conservation of the habitat
FIGURE 5. Triops cf. granarius from Socotra Island (Yemen). A–B, carapace in dorsal view of adult female (A) and male (B); female with small spines on the carapace (trachyaspis form). C, left posterior corner of carapace in female, dorsal view with spines on the surface. D, second maxilla, female. E, endopodite P2 female, setae on anterior face not shown. F, endopodite P6 female and adjacent endite, setae on anterior face not shown. G–I, telson female (G), details (H) and armature on terminal spines (I). Scale bars denote 10mm (A–B) and 1mm (C–I).
FIGURE 2. A in A record of Notostraca on Socotra Island and the importance of local conservation of the habitat
FIGURE 2. A, shallow temporary rockpool after rains on the limestone outcrops at the Eriosh archaeological site, Socotra Island (Yemen); no vegetation grows on the site, which is covered in a fine layer of sediment after rains; Photo KVD, January 2003. B, Triops cf. granarius from Socotra, adult female; scale bar denotes 1cm.
Fig. 2 in Molecular and morphological delimitation of Australian Triops species (Crustacea: Branchiopoda: Notostraca)-large diversity and little morphological differentiation
Fig. 2 Morphology of the head (a) and posterior margin of the carapace (b) and position of landmarks for morphometrics as well as position of telsonic spines on the dorsal surface of the telson (c). Landmark (LM) 1: anterior right corner of telson; LM 2: tip of largest right lateral spine; LM 3: intersection between telson and furca (right); LM 4: most posterior extension of the right telson lobe; LM 5: center of telson notch; LM 6: most posterior extension of the left telson lobe; LM 7: intersection between telson and furca (left); LM 8: tip of largest left lateral spine;
Fig. 4 in Molecular and morphological delimitation of Australian Triops species (Crustacea: Branchiopoda: Notostraca)-large diversity and little morphological differentiation
Fig. 4 Bayesian inference majority rule tree based on EF1α. Triops main and sublineages derived from COI are highlighted. All available EF1α sequences were included. Colors represent the individual's location (see Fig. 1). Numbers of terminals correspond to Australian Museum (AM) registration numbers (see also Supplement Table S1). For each node,
Fig. 1 in Molecular and morphological delimitation of Australian Triops species (Crustacea: Branchiopoda: Notostraca)-large diversity and little morphological differentiation
Fig. 1 Map showing all collection localities. The larger map depicts the main drainage systems (red lines) and the catchments basins of individual rivers (black lines). Geographically closely associated localities were grouped together, and the color-coding corresponds to Figs. 3 and 4. The numbers correspond to the locality numbers in Table 1 and Supplement Table S2. Scale bars correspond to 200 km each
Fig. 3 in Phylogeny, molecular ecology and taxonomy of southern Iberian lineages of Triops mauritanicus (Crustacea: Notostraca)
Fig. 3 Distribution of Triops mauritanicus lineages in southwestern Iberian Peninsula, limited to records from this and a preceding study (Korn et al. 2006), as literature records could not be assigned to the phylogenetic lineages. Black lines show political borders, grey lines the major rivers; dashed area indicates extension of marismas (natural temporary marshes) in Guadalquivir River delta around the year 1900
Fig. 9 Triops vicentinus n in Phylogeny, molecular ecology and taxonomy of southern Iberian lineages of Triops mauritanicus (Crustacea: Notostraca)
Fig. 9 Triops vicentinus n. sp., adult male (holotype). a Proximal region of 3rd endite of 10th trunk limb, anterior view; meshwork spines (and associat- ed row of spinules) shown in black, submarginal spines and edge of endite in grey. b Detail of 10th trunk limb, anterior view (EN3, 4 = 3rd, 4th endite; MWSP = meshwork spines; SMSP = submarginal spines). c Distal part of 2nd trunk limb. d Proximal region of 5th endite of 2nd trunk limb. e Telson, dorsal view. f Detail of 4th endite of 10th trunk limb, posterior view; only proximalmost parts of posterior row of meshwork spines shown, anterior row of meshwork spines in grey
Fig. 2 in Phylogeny, molecular ecology and taxonomy of southern Iberian lineages of Triops mauritanicus (Crustacea: Notostraca)
Fig. 2 Hypotheses on Triops mauritanicus ("T.m.") and T. c. cancriformis ("T.c.") phylogeny as reflected by our mitochondrial sequence data; outgroups (Triops longicaudatus, T. granarius, Lepidurus a. apus, L. a. lubbocki, L. arcticus, L. lemmoni) removed for clarity. a ML 12S tree based on large 12S dataset, using TVM+G model of evolution; ML/ MP bootstrap support values given for selected branches. b First of two ML trees based on combined 12S and 16S sequences from selected samples, using GTR+G model; ML
Fig. 10 Triops emeritensis n in Phylogeny, molecular ecology and taxonomy of southern Iberian lineages of Triops mauritanicus (Crustacea: Notostraca)
Fig. 10 Triops emeritensis n. sp., adult male (holotype). a Distal part of 2nd trunk limb. b Telson, dorsal view. c Proximal region of 3rd endite of 10th trunk limb, anterior view; meshwork spines and associated row of spinules shown in black, submarginal spines and edge of endite in grey
Fig. 8 Triops gadensis n in Phylogeny, molecular ecology and taxonomy of southern Iberian lineages of Triops mauritanicus (Crustacea: Notostraca)
Fig. 8 Triops gadensis n. sp., adult male (holotype). a Telson, dorsal view. b Distal part of 2nd trunk limb. c Proximal region of 5th endite of 2nd trunk limb
Fig. 7 Triops baeticus n in Phylogeny, molecular ecology and taxonomy of southern Iberian lineages of Triops mauritanicus (Crustacea: Notostraca)
Fig. 7 Triops baeticus n. sp., adult male (holotype). a Telson, dorsal view. b Distal part of 2nd trunk limb. c Proximal region of 5th endite of 2nd trunk limb
Data from: Self-fertilization and the role of males in populations of tadpole shrimp (Branchiopoda: Notostraca: Triops)
Open the record for dataset details and reuse information.
Data from: Evolutionary relationships within the Triops (Notostraca: Branchiopoda) using complete mitochondrial genomes
Open the record for dataset details and reuse information.
FIGURE 2. Streptocephalus longimanus. A & B in An updated and detailed taxonomical account of the large Branchiopoda (Crustacea: Branchiopoda: Anostraca, Notostraca, Spinicaudata) from the Yale North India Expedition deposited in the Yale Peabody Natural History Museum
FIGURE 2. Streptocephalus longimanus. A & B, eggs (Scale bars: A: 0.2 mm; B: 0.1 mm)
Figure 1 from: Mabidi A, Bird MS, Perissinotto R, Rogers DC (2016) Ecology and distribution of large branchiopods (Crustacea, Branchiopoda, Anostraca, Notostraca, Laevicaudata, Spinicaudata) of the Eastern Cape Karoo, South Africa. ZooKeys 618: 15-38. https://doi.org/10.3897/zookeys.618.9212
Figure 1 - Location of the sites sampled for large branchiopods in the Eastern Cape Karoo region of South Africa (a), including a zoomed-in perspective of the 22 sites within the focal study area (b).
Figure 2 from: Mabidi A, Bird MS, Perissinotto R, Rogers DC (2016) Ecology and distribution of large branchiopods (Crustacea, Branchiopoda, Anostraca, Notostraca, Laevicaudata, Spinicaudata) of the Eastern Cape Karoo, South Africa. ZooKeys 618: 15-38. https://doi.org/10.3897/zookeys.618.9212
Figure 2 - Dendrogram plot depicting the Bray-Curtis similarity of large branchiopod assemblages among sites sampled in the Eastern Cape Karoo. Sites are coded according to the season sampled (spring – November 2014 vs autumn – April 2015) and symbols indicate the sub region in which each site occurs, by reference to the nearest town name (with the exception of sites occurring within the Mountain Zebra National Park, coded as 'Mountain Zebra').
FIGURE 1 in Evidence for cryptic species in the tadpole shrimp Triops granarius (Lucas, 1864) (Crustacea: Notostraca)
FIGURE 1. The phylogenetic relationships within the Notostraca as reconstructed from (a) 12S (one of 12 MP trees; tree length=350, CI=0.6200, RI=0.8811) and (b) 16S (one of 4 MP trees; tree length=321, CI=0.7539, RI=0.9345) gene sequences with maximum parsimony (heuristic search with the settings gapmode=new, add=cl). Branch lengths are proportional to genetic divergence. Numbers above (or to the left of) branches indicate bootstrap support calculated by maximum parsimony (settings as above and with maxtrees=1000, nreps=1000) to the left and (for an additional comparison) calculated by NJ with MLdistances (nreps=1000) to the right of the "/".
Fig. 5 in Molecular and morphological delimitation of Australian Triops species (Crustacea: Branchiopoda: Notostraca)-large diversity and little morphological differentiation
Fig. 5 PCA and CVA of the morphological data of main lineages. a PCA of ovisacs-bearing individuals, b CVA of ovisacs-bearing individuals, and c PCA of males. All main lineages are represented by a specific symbol. In the CVA, all main lineages were predefined to maximize the variance
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